金 波

副教授

基本情况

金波,男,工学博士,副教授。2016年6月博士毕业于华中科技大学煤燃烧国家重点实验室,同年7月进入伟德官网化学化工公司工作。主要从事化学链CO2捕集与催化转化、化工过程模拟与控制、能源-经济-环境综合分析评价等研究工作,在J. Am. Chem. Soc., AIChE J., Appl. Catal. B, Chem Eng Sci, Chem Eng J, Environ Sci Technol等高水平期刊发表论文60余篇,合著中英文专著2部,申请/授权国家发明专利8项,参编国家/团体标准2项,主持国家自然科学基金(面上、青年)、国家重点研发计划子课题等10余项。

教育及工作经历

2011.9-2016.6 华中科技大学煤燃烧国家重点实验室工学博士导师:赵海波教授

2007.9-2011.6 湖南工业大学机械工程公司工学学士导师:蔡书鹏教授

2021.01-至今伟德官网化学化工公司,副教授,硕士生导师,博士生导师

2016.07-2020.12 伟德官网化学化工公司,助理教授,硕士生导师

2019.03-2020.03 Laboratory for Chemical Technology, Ghent University, Postdoctoral Research Fellow (Cooperator: Prof. Guy B. Marin)

2013.09-2014.03 GE Power Boiler R&D Execution Research Assistant

科研项目

[1]国家自然科学基金面上项目(22478099),2025-2028,主持、在研

[2]国家自然科学基金青年项目(21808050), 2019-2021,主持、已结题

[3]国家重点研发计划子课题(2018YFB0605302-03), 2018-2021,主持、已结题

[4]湖南省重点研发计划课题(2024JK2084),2024-2026,主持,在研

[5]湖南省自然科学基金青年项目(2018JJ3061),2018-2020,主持、已结题

[6]湖南省教育厅重点项目(22A0015),2022-2025,主持,在研

[7]长沙市自然科学基金重点项目(kq2402068),2024-2025,主持,在研

[8]xx全国重点实验室开放课题(2024SKLCCA2407),2024-2025,主持,已结题

[9]xx全国重点实验室开放课题(YSQH-ZYTS-24012),2025-2026,主持,在研

[10]xx国家重点实验室开放课题(2021-K49),2021-2022,主持、已结题

[11]xx重点实验室开放课题(2022SYSZZ01),2023-2024,主持,已结题

[12]企业委托项目(KY2022JC0003),2022-2024,主持,在研

[13]中央高校基本业务经费(531107050907),2016-2021,主持、已结题

学术成果

2026年

1. Y. Fan, B. Jin*, H. Zhao, N. Ruban, V. V. Galvita*, Z. Liang*. Two-Lever Design Rule for High-Entropy Oxide Oxygen Carriers: Minimize Spin Polarization, Maximize Fe–O–Ni Covalency. J. Am. Chem. Soc., 2026, 148, 10, 10452-10463

2025年

1. Xiang, W. Yao, B. Jin*, R. Wang, D. Fu, H. Gao, H. Zhao, Z. Liang*. Thermal transformation of metal-organic frameworks as Ca-Ni-Al bifunctional materials for efficient integrated CO2 capture and conversion. Chem. Eng. J., 2025, 519:165316

2. B. Jin*, W. Yao, J. Xiong, R. Wang, X. Xiang, H. Zhao, Z. Sun, Z. Sun, Z. Liang*. Tailoring component interactions over Ca-Fe-Ni bifunctional materials for efficient integrated CO2 capture and conversion. Chem. Eng. Sci., 2025, 309: 121486

3. B. Jin*, M. Xu, R. Wang, Y. Fan, X. Xiang, H. Zhao, Z. Liang*, Steel slag derived oxygen carriers and solid sorbents for chemical looping CO2 capture: A mini review. Result Eng., 2025, 25, 104438

4. B. Jin*, Y. Fan, F. Lv, G. Li, H. Zhao, Z. Liang*. Low concentration Ni doping to intensify redox kinetics of iron-based oxygen carriers for efficient chemical looping reverse water gas shift. Sep. Purif. Technol., 2025, 360(3), 131237

5.孙书桩,郭亚飞,赵传文*,邵斌,胡军*,孙楠楠*,李嘉楠,秦昌雷*,金波*,梁志武,张肖宇,刘文强*,张毅然*,曲雅琨,孙洪满*,王耀祖,余柏呈,周会*,赵虓仝,朱园,吴春飞*.二氧化碳捕集与利用一体化技术研究进展.洁净煤技术,2025,31(6):53−107

6. M. Zhou, S. Hong, B. Jin*, M. Xiao, H. Zhang, Z. Liang, H. Gao*, Amine-based physical solvent phase separation absorbents: Interaction study of 2DMEDA with sulfolane-water systems. Chem. Eng. J., 2025, 525, 170519

2024年

1. T. Ouyang, B. Jin*, Y. Mao, D. Wei, Z. Liang*. Control of strong electronic oxide-support interaction in iron-based redox catalysts for highly efficient chemical looping CO2 conversion. Appl Catal B Environ, 2024, 343, 123531

2. B. Jin*, R. Wang, D. Fu, T. Ouyang, Y. Fan, H. Zhang, Z. Liang,* Chemical looping CO2 capture and in-situ conversion as a promising platform for green and low-carbon industry transition: review and perspective. Carbon Capture Sci Technol, 2024, 10, 100169

3. Z. Yan, W. Zheng, S. Liu, X. Luo*, Y. Huang, B. Jin*, H. Gao, M. Xiao, Z. Liang*. Process simulation and optimization for post-combustion CO2 capture pilot plant using high CO2 concentration flue gas as a source. Sep Purif Technol, 2024, 349, 127873

4. Y. Fan, K. Wei, B. Jin*, Zhiwu Liang*. In-situ metal doping to boost the reactivity of layered double hydroxide derived Mg-Fe-Al-O oxygen carriers for chemical looping CH4 reforming with CO2 reduction. Chem Eng Sci, 2024, 298, 120347

5. B. Jin*, D. Fu, X. Xiang, H. Zhao, H. Zhang, D. MeiȽ, Z. Liang*. Integrated metal carbonate thermal decomposition with in-situ CO2 conversion: Review and perspective. Gas Sci Eng, 2024, 129, 205416

2023年

1. B. Jin*, T. Ouyang, Z. Zhang, Y. Zhao, H. Zhang*, W. Yao, G. Huang, Z. Liang*, Prussian blue derived Ca-Fe bifunctional materials for chemical looping CO2 capture and in-situ conversion, Sep Purif Technol, 2023, 320, 123975.

2. Y. Fan, B. Jin*, Q. Guo, Z. Liang*, Crystallite phase effect on the redox reactivity of layered double hydroxide derived iron-based oxygen carriers for chemical looping CO2 reduction, ACS Sustain Chem Eng, 2023, 11, 15, 5999–6010.

3. Y. Zhao, B. Jin*, W. Yao, Z. Liang*, Thermodynamic simulation and experimental investigation of manganese oxide (MnOx) for integrated CO2 capture and conversion via chemical looping route. Fuel, 2023, 344: 127997

4. Y. Zhao, B. Jin*, L. Zhang, W. Ji, Z. Liang*. Microstructured iron-based spinel oxygen carriers derived from Prussian blue analogues for chemical looping CO2 conversion. Chem Eng J, 2023, 454(3): 140226

5. Y. Zhao, B. Jin*, Z. Zhang, K. Huang, Y. Wang, X. Luo, Q. Guo, Z. Liang*, Tuning metal oxide-support interaction and crystal structure of prussian blue derived iron-based oxygen carriers for enhanced chemical looping CO2 conversion. Sep Purif Technol, 2023, 310(11): 123089

6. B. Jin*, K. Wei, T. Ouyang, Y. Fan, H. Zhao*, H. Zhang, Z. Liang*. Chemical looping CO2 capture and in-situ conversion: fundamentals, process configurations, bifunctional materials, and reaction mechanisms. Appl. Energy Combustion Sci, 2023, 16, 100218

2022年

1. Bo Jin*, Wenxing Yao, Kaile Liu, Shijian Lu, Xiao Luo, Zhiwu Liang*. Self-optimizing control and safety assessment to achieve economic and safe operation for oxy-fuel combustion boiler island systems. Appl Energ, 2022, 323:119397

2. Bo Jin, Nadadur Veeraraghavan Srinath, Hilde Poelman, Christophe Detavernier, Zhiwu Liang, Guy B. Marin, Vladimir V. Galvita*. Separate H2 and CO production from CH4-CO2 cycling of Fe-Ni. AIChE J, 2022, e17779

3. Guida Li; Wenxing Yao; Yunlei Zhao; Bo Jin*; Jianyong Xu; Yu Mao*; Xiao Luo; Zhiwu Liang*. Reduction kinetics and carbon deposit for Cu-doped Fe-based oxygen carriers: role of Cu. Chem Eng Sci, 2022, 250: 117406

4. Zhineng Zhang, Bo Jin*, Jiawen Liao, Xiao Luo, Zhiwu Liang*. Effect of loading strategy between promoter and calcium oxide on CO2 capture performance for metal-organic framework derived sorbents. Chem Eng J, 2022, 431 (9): 133855

5. Yunlei Zhao, Youyou Li, Bo Jin*, Zhiwu Liang*. Layered double hydroxide derived bifunctional Ca-Fe-Mg material for integrated CO2 capture and utilization via chemical looping strategy. Chem Eng J, 2022, 431 (3): 133826.

2021年

1. Bo Jin, Hilde Poelman, Christophe Detavernier, Zhiwu Liang, Guy B. Marin, Vladimir V. Galvita*. Microstructured ZrO2 coating of iron oxide for enhanced CO2 conversion. Appl Catal B Environ. 2021, 292:120194

2. Yunlei Zhao, Bo Jin*, Xiao Luo, Zhiwu Liang*. Thermodynamic evaluation and experimental investigation of CaO-assisted Fe-based chemical looping reforming process for syngas production. Appl Energ, 2021, 288(2):116614

2020年

1. Bo Jin*, Yunlei Zhao, Yihan Fan, Zhikai Deng, Zhiwu Liang*. Thermal management for chemical looping systems with chemical production. Chem Eng Sci. 2020, 214, 115431,

2. Guida Li, Jianling Li, Bo Jin,* Wenhao Ji, Yangqiang Huang, Xiao Luo, and Zhiwu Liang*, Efficient metal–organic framework-derived Cu–Zr oxygen carriers with an enhanced reduction reaction rate for chemical looping air separation. ACS Sustain Chem Eng. 2020, 8, 14795−14806.

3. Yunlei Zhao, Bo Jin*, Zhiwu Liang*. Synergistic enhanced Ca-Fe chemical looping reforming process for integrated CO2 capture and conversion. Ind Eng Chem Res. 2020, 59, 1298-1307.

2019年

1. Menglei Qing#, Bo Jin#, Jinchen Ma#, Xixian Zou, Xiaoyu Wang, Chuguang Zheng,Haibo Zhao*. Thermodynamic and economic performance of oxy-combustion powerplants integrating chemical looping air separation. Energy. 2020, 206, 118136.

2. Jiawen Liao, Bo Jin*, Yunlei Zhao, Zhiwu Liang*. Highly efficient and durable metal-organic framework material derived Ca-based solid sorbents for CO2 capture. Chem Eng J. 2019, 372, 1028-1037.

3. Kaile Liu, Bo Jin*, Yunlei Zhao, and Zhiwu Liang*. Self-optimizing control structure and dynamic behavior for CO2 compression and purification unit in oxy-fuel combustion application. Ind Eng Chem Res. 2019, 58, 3199-3210.

2018年

1. Yunlei Zhao, Bo Jin*, Zhikai Deng, Yangqiang Huang, Xiao Luo, Zhiwu Liang*. Thermodynamic analysis of a new chemical looping process for syngas production with simultaneous CO2 capture and utilization. Energy Convers Manage. 2018,171, 1685-1696.

2. Bo Jin, Haibo Zhao*, Chuguang Zheng, Zhiwu Liang. Control optimization to achieve energy-efficiency operation of the air separation unit in oxy-fuel combustion power plants. Energy. 2018, 152: 313-321.

3. Zhikai Deng, Bo Jin*, Yunlei Zhao, Hongxia Gao, Yangqiang Huang, Xiao Luo, Zhiwu Liang*. Process simulation and thermodynamic evaluation for chemical looping air separation using fluidized bed reactors. Energy Convers Manage. 2018,160, 289-301.

2017年

1. Bo Jin, Haibo Zhao*, Chuguang Zheng, Zhiwu Liang. Dynamic Exergy Method for Evaluating the Control and Operation of Oxy-Combustion Boiler Island Systems. Environ Sci Technol. 2017, 51: 725-732.

2016年

1. Bo Jin, Haibo Zhao*, Chuguang Zheng. Dynamic exergy method and its application for CO2 compression and purification unit in oxy-combustion power plants. Chem Eng Sci. 2016, 144: 336-345.

2. Bo Jin, Haibo Zhao*, Chuguang Zheng. Dynamic Simulation and Control Design for Pulverized Coal-fired Oxy-combustion Power Plants. Clean Coal Technology and Sustainable Development. Springer Singapore, 325-333, 2016(Book Chapter).

2015年

1. Bo Jin, Mingze Su, Haibo Zhao*, Chuguang Zheng. Plantwide control and operating strategy for air separation unit in oxy-combustion power plants. Energy Convers Manage. 2015, 106: 782-792.

2. Bo Jin, Haibo Zhao*, Chuguang Zheng. Thermoeconomic cost analysis of CO2 compression and purification unit in oxy-combustion power plants. Energy Convers Manage. 2015, 106: 53-60, 2015.

3. Bo Jin, Haibo Zhao*, Chun Zou*, Chuguang Zheng. Comprehensive investigation of process characteristics for oxy-steam combustion power plant. Energy Convers Manage, 2015, 99: 92-101.

4. Bo Jin, Haibo Zhao*, Chuguang Zheng. Optimization and control for CO2 compression and purification unit in oxy-combustion power plants. Energy. 2015, 83: 416-30.

2014年

1. Bo Jin, Haibo Zhao*, Chuguang Zheng. Dynamic simulation for mode switching strategy in a conceptual 600MWe oxy-combustion pulverized-coal-fired boiler. Fuel. 2014, 137: 135-44.

2. Bo Jin, Haibo Zhao*, Chuguang Zheng. Dynamic modeling and control for pulverized-coal-fired oxy-combustion boiler island. Int J Greenh Gas Con. 2014, 30: 97-117.

发明专利

[1]金波,梁志武,刘开乐.一种富氧燃烧系统及其控制方法. 2023,中国发明专利,授权号:ZL202010650442.6

[2]金波,赵芸蕾,梁志武.制备合成气以及捕获和利用二氧化碳的方法和装置. 2019, 中国发明专利,授权号:ZL201710311597.5

[3]梁志武,赵芸蕾,金波.一种利用烟气制备合成气的方法. 2021,中国发明专利,授权号:ZL201710311596.0

[4]赵海波,邹希贤,金波,郑楚光.一种耦合太阳能与化学链空分技术的富氧燃烧系统. 2016,中国发明专利,授权号:ZL2014103330588

专著

[1]赵海波,郑楚光,金波,张超,熊杰.燃煤电站过程模拟与热经济学分析评价.北京:科学出版社,2020

[2]Bo Jin, Haibo Zhao, Zhaohui Liu. Oxy-fuel Combustion: Fundamentals, Theory and Practice. Elsevier, 2017, 223-236. (Chapter 11)

[3]Bo Jin, Wei Luo, Haibo Zhao, Zhaohui Liu. Oxy-fuel Combustion: Fundamentals, Theory and Practice. Elsevier, 2017, 239-260. (Chapter 12)

奖励与荣誉

[1]中国国际老员工创新大赛国赛铜奖、湖南省赛一等奖、二等奖指导教师(2025年)

[2]第三批国家级一流本科课程负责人(2025年)

[3]伟德官网教学成果奖(本科生、研究生)一等奖(2025年)

[4]伟德官网优秀教师(2025年)

[5]伟德官网化学化工公司“初源奖教金”(2024年)

[6]第十九届“挑战杯”全国老员工课外学术科技作品竞赛三等奖指导教师(2024年)

[7]湖南省“芙蓉计划芙蓉学者项目”青年学者(2024年)

[8]RINENG Young Investigator Award(2024年)

[9]GSE Emerging Scientist Award(2024年)

[10]湖南省青年骨干教师(2023年)

[11]伟德官网青年教工示范岗(2023年)

[12]伟德官网优秀实习指导教师(2023年)

[13]IChemE &CCST Young Investigator Award(2023年)

[14]中国石油和化工公司产品优秀成果(2022年)

[15]湖南省石油学会“石油化工优秀工程师奖“(2022年)

[16]湖南省化学化工学会“青年化学化工奖”(2020年)

[17]全国老员工化工设计竞赛特等奖(2018年,2020年,2023年),一等奖(2021年,2022年、2024年、2025年)指导教师

[18]伟德官网创新创业优秀指导教师(2018年,2020年,2021年)

[19]全国石油和化工教育优秀团队(2019年)

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